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Vitobloc 200 – Type EM-70/115

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Vitobloc 200 – Type EM-70/115
Vitobloc 200 – Type EM-70/115

Type EM-70/115

Cogeneration plant operating on natural gas

  • Electric power: 70 kW

  • Thermal power: 117 kW

  • Smooth-running engines with a three-way catalytic converter

  • Completely ready for connection

Your local Viessmann sales partner will provide you with individual advice.

Electrical outlet

70 kW

Thermal power

117 kW

Smooth operation of engines

With a three-way catalytic converter

Completely ready for connection

And tested at the factory

Established technology

More than 5,000 Vitobloc 200 units are in operation

Attractive subsidy programs

Especially in Germany

Proven remote monitoring systems

And automation systems

Well-established technology

The Vitobloc 200 EM-70/115 cogeneration units have a capacity of 70 kWel and 117 kWh . Using a downstream condensing heat exchanger—the Vitotrans 200 AC type—more than 22 kWh of additional heat can be supplied to the heating system.

Cogeneration units are ideal for situations where heat is required continuously and electricity production can continue for as long as possible.

Thanks to their power, these Vitobloc 200 units are suitable for new construction and modernisation projects in industrial and commercial buildings, as well as local government premises.

Reliability and efficiency

The Vitobloc 200 complies with the strict technical connection requirements (TAB) of grid operators in Germany. The standard equipment includes starter batteries and a synchronous generator, which also enable the cogeneration unit to operate in grid replacement mode.

Extended maintenance intervals thanks to the integrated lubrication oil supply system reduce operating costs and downtime. Plug-and-play, factory-tested units ensure minimal installation effort and proven power output.

Product details

Type

EM-70/115

Electrical outlet

70 kW

Thermal power

117 kW

Downloads

Datasheet - Vitobloc 200 type EM-70/115

PDF - 2.3 MB

Technology Brochure - Combined Heat and Power Plants

PDF - 9.3 MB